Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
17,475
datasets available to search
ShareScore release 0.9.0
Dataset results
17,475 results for “taxonomic revision”
FIGURE 12 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE 12. Color patterns and color tones of Leptophis coeruleodorsus: (A) An uncollected specimen from Parque del Este, Caracas D.F., Venezuela; (B) An uncollected specimen from Villanueva, Casanare, Colombia; in these specimens, the middorsal area is five and nine scales wide, respectively, at least on the anterior portion of the body; (C) a MVURG specimen (catalog number unknown) from San Juan de los Morros, El Castrero, state of Guarico, Venezuela. Brackets indicate dorsolateral stripe at rows 2–5 and 2–3, respectively. Photos by L.A. Rodríguez J. (A), W. L. Riaño (via Naturalista under license CC-BY-NC 4.0) and M.A. Natera-Mumaw (C).
FIGURE 11 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE 11. Sulcate (left) and asulcate (right) sides of the hemipenes of Leptophis bolivianus (AMNH 104564) from Estancia Yutiole, department of Beni, Bolivia (A–B); L. coeruleodorsus (TCWC 46262) from municipality of San Fernando de Apure, state of Apure, Venezuela (C–D); L. liocercus (CZGB 1149) from municipality of Ilhéus, state of Bahia, Brazil (E–F). Note that although the hemipenis of CZGB 1149 is slightly bilobed, its sulcus spermaticus remains unbifurcated until the apical portion of the organ; L. nigromarginatus (LPHA 1731) from municipality of Santarém, state of Pará, (G–H); and (TCWC 42177) from Centro Union, departament of Loreto, Peru (I–J). Although the first row of basal spines is small in the four species, the two spines adjacent to sulcus spermaticus are larger than those in other rows. Scale bars = 0.5 cm. Photos by D. Kizirian (A–B) and N.R. Albuquerque (C–J).
FIGURE 7 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE 7. Color patterns and color tones variability of Leptophis bocourti: (A) USNM 285488, an adult from Santo Domingo de los Colorados, 47 km S of Centro Cientifico Río Palenque, province of Los Rios and (B) QCAZ 8023, a juvenile from province of Durango, Ecuador. Used under CC BY-NC-ND 4.0 https://bioweb.bio/galeria/Album/Leptophis%20ahaetulla. Note that the dorsal color in adults is essentially green in life, but in the juvenile specimen, the color of scales in dorsal rows 1–2 is yellow (indicated by the arrow). Further, the dorsum of the juvenile lacks the small, irregularly shaped black spots of adults, suggesting a distinct ontogenetic color change. Photos by R.W. McDiarmid (A) and S. Ron (B).
FIGURE 10 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE 10. Color patterns and color tones variability of Leptophis bolivianus: (A) Paratype FMNH 35614, SVL 727 mm, (B) Paratype FMNH 35620, SVL 1118 mm, (C) Holotype UMMZ 67973, SVL 1079 mm and (D) Paratype UMMZ 67976b, SVL 755 mm—all with incomplete tail—showing the variation in the distribution, number and extent of black spots on the supraocular and parietal scales (see text for discussion); (E) AMNH 141443, SVL 367 mm, a female from San Antonio de Parapeti, Santa Cruz, Bolivia exhibiting the banded pattern typical of juveniles of most species of Leptophis, scale bar = 0.5 cm; (F) Female paratopotype that also bears the USNM number 67977, note that the dorsal scales of its tail are keeled only from the point of reduction from six to four rows (indicated by the arrow), scale bar = 1 cm; (G) Holotype UMMZ 67973, SVL 1079 mm showing the ventral scales not edged. Courtesy of The Field Museum, FMNH 35614 and FMNH 35620 (C), D. Kizirian (E) and N.R. Albuquerque (F–G).
FIGURE 2 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE 2. Color patterns and color tones variability of Leptophis ahaetulla: (A) An uncollected specimen from road between Georgetown and Iwokrama, Guyana; (B) MPEG 19434 (SVL 688 mm) from Santo Antônio do Tauá, state of Pará, Brazil; (C) An uncollected specimen from Santarém, state of Pará, Brazil; (D) MPEG 24491 (SVL 543 mm) from Marabá, state of Pará, Brazil; (E) An uncollected specimen from Santarém, state of Pará, Brazil; and (F) an uncatalogued IBSP specimen from Peixe, state of Tocantins, Brazil. Note the variation in the extent, width and pigmentation of the pre- and postocular stripes. Photos by A. Srikanthan (A), A. Maciel (B), R. de Fraga (C), N.R. Albuquerque (D), R. Kawashita-Ribeiro (E), and A. Costa (F).
FIGURE 8 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE 8. Distribution of Leptophis bocourti, L. coeruleodorsus, L. occidentalis, L. praestans, and L. urostictus based upon the material examined.
FIGURE 9 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE 9. Color patterns and color tones variability of Leptophis bolivianus: MNKR 4332 (SVL 920 mm), a female from Estancia Caparu, Provincia Chiquitos, Santa Cruz, Bolivia. Note the (A) general color pattern and the (B) postocular extending beyond seven scales onto the nuchal region (indicated by the arrow) in this specimen, respectively. Photos by L. Gonzales.
FIGURE. 1 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE. 1. Leptophis ahaetulla (MPEG 24491, SVL 543 mm) from Marabá, Pará state, Brazil. Note the two Light Grass Green (109) dorsolateral stripes separated from each other by a Yellow Ocher (14) vertebral stripe. Photo by A. Maciel.
FIGURE. 3 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE. 3. Color patterns and color tones variability of Leptophis ahaetulla: MHNLS 14011 SVL 1217 mm (incomplete tail) from Siapa River, Amazonas, Venezuela. The vertebral stripe appears at vertebral scale 22 on the anterior (A) portion of the body and its coloration extends laterally, occupying scales of paravertebral rows in the middle (B) and posterior (C) portions of the body. Photo by N.R. Albuquerque.
FIGURE. 5 in Taxonomic revision of the parrot snake Leptophis ahaetulla (Serpentes, Colubridae)
FIGURE. 5. Lectotype (UUZM 2) of Coluber ahaetulla Linnaeus, 1758. Although the specimen has not retained its original coloration, the light vertebral stripe (indicated by the arrow) is still visible. Courtesy of E. Mejlon.
FIGURES 57–62 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 57–62. Meria askhabadensis, ♂. 57. Habitus, dorsal view; 58. Head, frontal view; 59. Pronotum, dorsal view; 60. Pronotum, lateral view; 61. T3–T5, dorsal view; 62. T7, dorsal view.
FIGURES 16–24 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 16–24. Hylomesa longiceps, ♀. 16. Habitus, dorsal view; 17. Head, frontal view; 18. Vertex, dorsal view; 19. Pronotum, dorsal view; 20. Pronotum, lateral view; 21. Hind femur and tibia, dorsal view; 22. Propodeum, dorsal view; 23. T1, dorsal view; 24. T6, dorsal view.
FIGURES 1–8 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 1–8. Hylomesa punctata sp. nov., holotype, ♀. 1. Habitus, dorsal view (CM: marginal cell; CSM I: the first sub marginal cell; CSM II: the second sub marginal cell; CSM III: the third sub marginal cell); 2. Head, frontal view; 3. Vertex, dorsal view; 4. Pronotum, dorsal view; 5. Mesosoma, lateral view; 6. Propodeum, dorsal view; 7. T1, dorsal view; 8. T6, dorsal view.
FIGURES 63–70. Meria discussa, 63, 65, 68 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 63–70. Meria discussa, 63, 65, 68, ♀; 64, 66–67, 69–70, ♂. 63. Habitus, dorsal view (CPM: paramarginal cell; CSM I: the first sub marginal cell; CSM II: the second sub marginal cell); 64. Habitus, dorsal view; 65. Head, frontal view; 66. Pronotum, lateral view; 67. Pronotum, dorsal view; 68. Metasoma, dorsal view; 69. T3–T5, dorsal view; 70. T7, dorsal view.
FIGURES 80–85 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 80–85. Poecilotiphia brevicauda kaszabi, ♂. 80. Habitus, dorsal view; 81. Head, frontal view; 82. Vertex, dorsal view; 83. Pronotum, dorsal view; 84. Propodeum, dorsal view; 85. T7, dorsal view.
FIGURES 9–15 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 9–15. Hylomesa bakeri, ♀. 9. Habitus, dorsal view; 10. Vertex, dorsal view; 11. Pronotum, dorsal view; 12. Propodeum, dorsal view; 13. Hind femur and tibia, dorsal view; 14. T1, dorsal view; 15. T6, dorsal view.
FIGURES 44–50 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 44–50. Meria aurantiaca, ♂. 44. Habitus, dorsal view; 45. Head, frontal view; 46. Pronotum, dorsal view; 47. Pronotum, lateral view; 48. T3–T5, dorsal view; 49. T7, dorsal view; 50. T7, lateral view.
FIGURES 51–56 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 51–56. Meria dorsalis, ♂. 51. Habitus, dorsal view; 52. Vertex, dorsal view; 53. Pronotum, dorsal view; 54. Pronotum, lateral view; 55. Propodeum, dorsal view; 56. T7, dorsal view.
FIGURES 37–43 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 37–43. Komarowia mongolina, ♂. 37. Habitus, dorsal view; 38. Head, frontal view; 39. Vertex, dorsal view; 40. Pronotum, dorsal view; 41. Pronotum, lateral view; 42. Propodeum, dorsal view; 43. T7, dorsal view.
FIGURES 25–36. Hylomesa taiwana, 25, 28–29, 31, 33, 35 in A taxonomic revision of the subfamily Myzininae from China, with a key to the Chinese species (Hymenoptera: Tiphiidae)
FIGURES 25–36. Hylomesa taiwana, 25, 28–29, 31, 33, 35, ♀; 26–27, 30, 32, 34, 36, ♂. 25–26. Habitus, dorsal view; 27. Head, ventral view; 28. Vertex, dorsal view; 29–30. Pronotum, dorsal view; 31–32. Propodeum, dorsal view; 33–34. T1, dorsal view; 35. T6, dorsal view; 36. T7, lateral view.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.